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DNA小沟中的生物正交功能化:以环丙烯基和庚烯酰基保护的2-氨基-2'-脱氧腺苷为靶点的逆电子需求狄尔斯-阿尔德反应

Bioorthogonal Functionalization in the Minor Groove of DNA: Inverse-Electron Demand Diels Alder Reactions with Cyclopropenyl and Heptenoyl Protected 2-Amino-2'-deoxyadenosine as Target Site.

作者信息

Xia Zhenqiang, Kondhare Dasharath, Deshmukh Sushma, Chandankar Somnath, Leonard Peter

机构信息

Laboratory of Bioorganic Chemistry and Chemical Biology, Center for Nanotechnology, Heisenbergstrasse 11, 48149, Münster, Germany.

出版信息

Chemistry. 2025 May;31(25):e202500529. doi: 10.1002/chem.202500529. Epub 2025 Apr 7.

Abstract

Bioorthogonal functionalization in the minor groove of DNA with protected 2-amino-2'-deoxyadenosine (2-amino-dA, 1) as a target site is described. Cyclopropene and heptene as part of 2-aminoacyl protecting groups served as dienophiles in inverse-electron demand Diels-Alder (iEDDA) reactions with 3,6-dipyridyl-1,2,4,5-tetrazine as diene. For the purpose, bis-protection of 1 with cyclopropenyl and heptenoyl groups was conducted. Selective removal of the 6-amino protecting groups gave mono-protected 1. 2-Amino-dA pyridazine conjugates were accessed by iEDDA cycloaddition with tetrazine. Second order rate constants disclosed faster reaction kinetics for cyclopropenyl than for heptenoyl 2-amino-dA. To access protected oligonucleotides, phosphoramidites prepared from bis-protected 2-amino-dA were used in standard solid-phase synthesis. 2-Amino protecting groups were retained using mild deprotection conditions. Hybridization experiments disclosed increased duplex stability when protected 2-amino-dA-dT pairs replaced 1-dT pairs. Mismatch discrimination of cyclopropenyl and heptenoyl 2-amino-dA was superior to 2-amino-dA. iEDDA reactions on protected oligonucleotides furnished oligonucleotide pyridazine conjugates. In base pairs with dT, 2-amino-dA pyridazine conjugates connected by a short rigid cyclopropenyl ring led to reduced thermal stability, whereas pyridazine conjugates attached by a long flexible linker retained duplex stability. The findings of this investigation pave the way for functionalization and labelling in the minor groove of DNA using copper free iEDDA cycloaddition.

摘要

本文描述了以受保护的2-氨基-2'-脱氧腺苷(2-氨基-dA,1)作为靶位点,在DNA小沟中进行生物正交功能化的方法。环丙烯和庚烯作为2-氨基酰基保护基团的一部分,在与3,6-二吡啶基-1,2,4,5-四嗪作为二烯的逆电子需求Diels-Alder(iEDDA)反应中作为亲双烯体。为此,对1进行了环丙烯基和庚烯酰基的双保护。选择性去除6-氨基保护基团得到单保护的1。通过与四嗪的iEDDA环加成反应得到2-氨基-dA哒嗪缀合物。二级速率常数表明,环丙烯基2-氨基-dA的反应动力学比庚烯酰基2-氨基-dA更快。为了获得受保护的寡核苷酸,由双保护的2-氨基-dA制备的亚磷酰胺用于标准固相合成。使用温和的脱保护条件保留2-氨基保护基团。杂交实验表明,当受保护的2-氨基-dA-dT对取代1-dT对时,双链体稳定性增加。环丙烯基和庚烯酰基2-氨基-dA的错配识别优于2-氨基-dA。对受保护的寡核苷酸进行iEDDA反应得到寡核苷酸哒嗪缀合物。在与dT的碱基对中,通过短刚性环丙烯基环连接的2-氨基-dA哒嗪缀合物导致热稳定性降低,而通过长柔性接头连接的哒嗪缀合物保留双链体稳定性。本研究结果为使用无铜iEDDA环加成在DNA小沟中进行功能化和标记铺平了道路。

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